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Generalized stationary phase approximations for mountain waves

机译:山浪的广义平稳相位近似

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Large altitude asymptotic approximations are derived for vertical displacements due to mountain waves generated by hydrostatic wind flow over arbitrary topography. This leads to new asymptotic analytic expressions for wave-induced vertical displacement for mountains with an elliptical Gaussian shape and with the major axis oriented at any angle relative to the background wind. The motivation is to understand local maxima in vertical displacement amplitude at a given height for elliptical mountains aligned at oblique angles to the wind direction, as identified in Eckermann et al. ["Effects of horizontal geometrical spreading on the parameterization of orographic gravity-wave drag. Part 1: Numerical transform solutions," J. Atmos. Sci. 72, 2330-2347 (2015)]. The standard stationary phase method reproduces one type of local amplitude maximum that migrates downwind with increasing altitude. Another type of local amplitude maximum stays close to the vertical axis over the center of the mountain, and a new generalized stationary phase method is developed to describe this other type of local amplitude maximum and the horizontal variation of wave-induced vertical displacement near the vertical axis of the mountain in the large altitude limit. The new generalized stationary phase method describes the asymptotic behavior of integrals where the asymptotic parameter is raised to two different powers (1/2 and 1) rather than just one power as in the standard stationary phase method. The vertical displacement formulas are initially derived assuming a uniform background wind but are extended to accommodate both vertical shear with a fixed wind direction and vertical variations in the buoyancy frequency. (C) 2016 AIP Publishing LLC.
机译:对于由任意地形上的静水力气流产生的山波所引起的垂直位移,可以得出大高度的渐近近似。对于具有椭圆形高斯形状且长轴相对于背景风定向为任何角度的山脉,这导致了波浪引起的垂直位移的新渐近解析表达式。动机是要了解与风向倾斜的椭圆山在给定高度的垂直位移幅度的局部最大值,如Eckermann等人所述。 [“水平几何扩展对地形重力波阻力的参数化的影响。第1部分:数值变换解决方案,” J。Atmos。科学72,2330-2347(2015)]。标准的固定相位方法再现了一种类型的局部振幅最大值,该局部振幅最大值随高度的增加而顺风迁移。另一种类型的局部振幅最大值保持在山脉中心附近的垂直轴附近,因此开发了一种新的广义平稳相位方法来描述这另一种类型的局部振幅最大值和波浪在垂直方向附近引起的垂直位移的水平变化在高海拔范围内的山地轴线。新的广义固定相方法描述了积分的渐近行为,其中将渐近参数提高到两个不同的幂(1/2和1),而不仅仅是标准平稳相方法中的一个幂。垂直位移公式最初是在假定背景风均匀的情况下得出的,但后来得到扩展,以适应具有固定风向的垂直剪切力和浮力频率的垂直变化。 (C)2016 AIP出版有限责任公司。

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